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首页> 外文期刊>Plant molecular biology reporter >Comparative Transcriptomic Analysis of Two Rice (Oryza sativa L.) Male Sterile Line Seed Embryos Under Accelerated Aging
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Comparative Transcriptomic Analysis of Two Rice (Oryza sativa L.) Male Sterile Line Seed Embryos Under Accelerated Aging

机译:加速老化下两种稻米(Oryza Sativa L.)雄性无菌线种子胚胎的比较转录组分

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Seed aging is a complex and irreversible process during seed development and storage. The quality of parental seeds affects yield and quality of hybrid rice seeds directly. However, little is known about the mechanism of the accelerated aging seeds in hybrid rice photoperiod-thermo-sensitive genic male sterile (PTGMS) lines. RNA-Seq technique was performed by using seed embryos of two PTGMS lines, Y58S (YS) and Zhun S (ZS), under the restrictive conditions (95% relative humidity and 45 degrees C) for 0 day, 5 days, 7 days, and 10 days. In total, 1198, 487, 1308, 396, and 669 differentially expressed genes (DEGs) were identified between adjacent time periods of accelerated aging treatment in the ZS and YS. Gene Ontology (GO) analysis revealed the DEGs enriched in the starch catabolic process and sucrose catabolic process. It also showed that many genes were enriched in the Kyoto Encyclopedia of Genes and Genomes (KEGG) pathways such as starch and sucrose metabolism, plant-pathogen interaction, and plant hormone signal transduction. In addition, 34 candidate genes were selected to the following phylogenetic analysis and different gene expression profiles. Finally, several key candidate genes of seed aging were identified, containing a rice sucrose synthase Os07g0616800 and an unknown gene Os12g0161500, by quantitative real-time PCR. Together, these results established a good foundation for studying the molecular mechanism of rice seed storability and also provide new insights into the PTMGS line seed storage.
机译:种子衰老是种子开发和储存过程中的复杂和不可逆转的过程。亲本种子的质量直接影响杂交水稻种子的产量和质量。然而,关于杂交米光周期热敏敏感基因雄性无菌(PTGMS)线的加速老化种子的机制很少。通过使用两个PTGMS系,Y58s(YS)和ZS)的种子胚胎进行RNA-SEQ技术,在限制条件下(95%相对湿度和45摄氏度)0天,5天,7天,和10天。在ZS和Ys中加速老化处理的相邻时间段之间鉴定了总,1198,487,1308,396和669个差异表达基因(DEGS)。基因本体(GO)分析显示富含淀粉分解代谢过程和蔗糖分解酵素过程的果酒。它还表明,许多基因富含基因和基因组(Kegg)途径(如淀粉和蔗糖代谢,植物 - 病原体相互作用和植物激素信号转导。此外,选择34个候选基因在以下系统发育分析和不同基因表达谱中。最后,通过定量实时PCR鉴定出含有水稻蔗糖合酶OS07G07G07G07G07G07G07G07G0616800和未知基因OS12G0161500的几个关键候选基因。这些结果在一起建立了研究水稻种子储存性的分子机制的良好基础,并为PTMGS线储存提供了新的见解。

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